[0001] The present invention relates to a protection apparatus for a secondary battery,
and more particularly, to a protection circuit for a secondary battery, which can
prevent a swelling phenomenon from occurring in the secondary battery.
[0002] Recently, secondary batteries have been used as power sources of portable electronic
devices in many fields, and accordingly, demands on secondary batteries rapidly increase.
The secondary batteries can be charged and discharged several times and thus are economically
and environmentally effective. Accordingly, the use of the secondary batteries is
promoted.
[0003] A swelling phenomenon in which a secondary battery swells at a high temperature/high
voltage due to gas or the like may occur in the secondary battery. The swelling phenomenon
may cause an electrical short circuit. If an external impact is applied to the secondary
battery in the state in which the secondary battery swells, a spark or the like occurs,
and therefore, the secondary battery may explode.
[0004] Conventionally, the swelling phenomenon was overcome in such a manner that an extra
space was provided in a battery pack having a secondary battery mounted therein so
that a user could not perceive the occurrence of a swelling phenomenon of the secondary
battery. However, this manner does not meet the tendency of mobile products that gradually
get slimmer, and there is a limitation that this manner does not provide a fundamental
solution to the swelling phenomenon.
[0005] Embodiments provide a protection apparatus for a secondary battery, in which the
charging/discharging of the secondary battery is controlled by estimating in advance
a risk that a swelling phenomenon may occur in the secondary battery, so that it is
possible to take appropriate action before swelling occurs and to prevent the swelling
phenomenon from occurring in the secondary battery.
[0006] According to an aspect of the present invention, there is provided protection apparatus
for a secondary battery, comprising means for storing temperature and voltage information
defining a swelling condition of a secondary battery, means for measuring temperature
and voltage of the secondary battery, means for estimating the battery temperature
at a predetermined time based on the measured temperature and means for controlling
charging/discharging of the secondary battery when the estimated temperature and the
measured voltage satisfy the swelling condition.
[0007] The stored temperature and voltage may define first and second swelling conditions,
and the estimating means may be arranged to start estimating the battery temperature
when the first swelling condition is satisfied and the means for controlling charging/discharging
may be arranged to operate when the estimated temperature and the measured voltage
satisfy the second swelling condition.
[0008] The measuring means may be arranged to measure temperature and voltage of the secondary
battery in a normal state at a first frequency and to measure temperature and voltage
of the secondary battery at a second frequency higher than the first frequency when
the measured temperature and voltage satisfy the first swelling condition.
[0009] When the measured voltage and estimated temperature satisfy the second swelling condition
and the secondary battery is in a non-charging mode, the charging/discharging control
means may be arranged to discharge the secondary battery.
[0010] During the discharge of the secondary battery the apparatus may be arranged to determine
if the measured voltage and estimated temperature satisfy the first swelling condition
or if the temperature is decreasing, and in either case to stop discharge.
[0011] When the measured voltage and estimated temperature satisfy the second swelling condition
and the secondary battery is in a charging mode, the charging/discharging control
means may be arranged to adjust the current and/or voltage applied to the secondary
battery.
[0012] The charging/discharging control means may be arranged to stop charging the secondary
battery if the estimated temperature and measured voltage continue to satisfy the
second swelling condition after adjusting the current and/or voltage applied to the
secondary battery.
[0013] The charging/discharging control means may be arranged to discharge the secondary
battery if after stopping charging the secondary battery the temperature increases.
[0014] The means for estimating the battery temperature may be arranged to estimate the
battery temperature by using a rate of temperature change based on previously measured
temperatures.
[0015] The means for estimating the battery temperature may be arranged to weight rates
of temperature change so that higher rates of temperature increase have a greater
weight.
[0016] The temperatures and voltages may comprise temperature and voltage averages measured
over predetermined periods.
[0017] The swelling condition may comprise a plurality of sets of temperature and allowable
voltage values, the allowable voltage values decreasing with increasing temperature.
[0018] The measuring means may be arranged to measure temperature and voltage of the secondary
battery less frequently when the secondary battery is in a non-charging mode than
when the secondary battery is in a charging mode.
[0019] A secondary battery may comprise a battery cell and protection apparatus as described
above connected to the battery cell.
[0020] According to the present invention, it is possible to prevent, in advance, a swelling
phenomenon from occurring in a secondary battery by estimating in advance a risk that
the swelling phenomenon will occur in the secondary battery and controlling charging/discharging
of the secondary battery when the risk exists.
[0021] The accompanying drawings illustrate exemplary embodiments of the present invention,
and, together with the description, serve to explain the principles of the present
invention.
FIG. 1 is a block diagram schematically showing a protection apparatus for a secondary
battery according to an embodiment of the present invention;
FIG. 2 is a block diagram showing a detailed configuration of the protection apparatus
according to the embodiment of the present invention;
FIG. 3 is a graph illustrating a swelling condition and an operation of a charging/discharging
control unit according to the swelling condition;
FIG. 4 is a flowchart illustrating a control method of the protection apparatus according
to an embodiment of the present invention; and
FIG. 5 is a flowchart illustrating an operation of the charging/discharging control
unit according to an embodiment of the present invention.
[0022] Referring to FIG. 1, the protection apparatus 120 is coupled to a secondary battery
110 so as to control charging/discharging of the secondary battery 110.
[0023] Here, an external power source 100 refers to a power source that charges the secondary
battery 110 by applying current to the secondary battery 110. For example, the external
power source 100 may be an AC adapter coupled to a charging device of the secondary
battery 110 so as to apply current to the secondary battery 110, but the present invention
is not limited thereto. That is, the external power source 100 may include all power
sources that can apply current to the secondary battery 110.
[0024] The secondary battery 110 refers to a rechargeable battery. The secondary battery
110 may include a lead-acid battery, a nickel cadmium (NiCd) battery, a nickel metal
hydride (NiMH) battery, a lithium ion battery (LiB), a lithium polymer battery (LiPB),
and the like.
[0025] The swelling phenomenon that occurs in the secondary battery 110 is an irreversible
phenomenon. Therefore, to maintain stable performance of the secondary battery 110,
it is important to prevent the swelling phenomenon from occurring in the secondary
battery 110.
[0026] The protection apparatus 120 according to the present invention estimates a risk
that the swelling phenomenon will occur in the secondary battery 110 by monitoring
the temperature and voltage of the secondary battery 110, and controls the charging/discharging
of the secondary battery 110, so that it is possible to prevent, in advance, the swelling
phenomenon of the secondary battery 110.
[0027] According to an embodiment of the present invention, the protection apparatus 120
may be coupled to the secondary battery 110 so as to form a battery pack, or may be
provided to an electronic device or charging device to which the secondary battery
110 is coupled so as to protect the secondary battery 110.
[0028] Hereinafter, the driving principle of the protection apparatus 120 will be described
in detail with reference to FIG. 2.
[0029] Referring to FIG. 2, the protection apparatus 120 may include a memory unit 121,
a measurement unit 123, a temperature estimation unit 125, a charging/discharging
control unit 127 and a control unit 129.
[0030] The memory unit 121 stores first and second swelling conditions of temperatures and
voltages.
[0031] The first swelling condition refers to conditions in which there is a high risk that
the swelling phenomenon will occur, and the second swelling condition refers to conditions
in which the swelling phenomenon will almost inevitably occur. For example, the first
and second swelling conditions may be stored in the memory unit 121 as shown in the
following Tables 1 and 2.
Table 1
| • First swelling condition |
| Temperature (T) |
40≤T<45 |
45≤T<50 |
50≤T<55 |
55≤T<60 |
60≤T |
| Voltage (V) |
4.1<V≤4.2 |
4.0<V≤4.1 |
3.9<V≤4.0 |
3.8<V≤3.9 |
3.7<V≤3.8 |
Table 2
| • Second swelling condition |
| Temperature (T) |
40≤T<45 |
45≤T<50 |
50≤T<55 |
55≤T<60 |
60≤T |
| Voltage (V) |
4.2<V |
4.1<V |
4.0<V |
3.9<V |
3.8<V |
[0032] Generally, as the temperature of the secondary battery 110 increases, the allowable
voltage of the secondary battery 110 decreases. Therefore, as the temperature of the
secondary battery 110 increases under the first and second swelling conditions, the
allowable voltage of the secondary battery 110 decreases.
[0033] According to Tables 1 and 2, in a case where the temperature of the secondary battery
110 is 47 degrees and the voltage of the secondary battery 110 is 4.05V, the first
swelling condition is satisfied. In a case where the temperature of the secondary
battery 110 is 47 degrees and the voltage of the secondary battery 110 is 4.2V, the
second swelling condition is satisfied.
[0034] It will be apparent to those skilled in the art that the first and second swelling
conditions are merely examples for illustrating the present invention, and may be
variously set by a user according to the kind of the secondary battery 110, the charging
capacity of the secondary battery 110, the charging environment of the secondary battery
110, and the like. In other words, the swelling conditions are not limited to particular
voltage and temperature combinations, but may include other parameters that indicate
a risk of swelling occurring. Furthermore, the specific values given in the tables
above are illustrative only. The first and second swelling conditions will be described
in detail with reference to the accompanying drawings.
[0035] The measurement unit 123 measures temperatures and voltages of the secondary battery
110 according to predetermined measurement periods and measurement frequency. For
example, in the case where the protection apparatus 120 operates in a non-charging
mode, the measurement unit 123 may measure temperatures and voltages of the secondary
battery 110 less frequently than in the case where the protection apparatus 120 operates
in a charging mode, since the risk of swelling is greater in the charging mode than
in the non-charging mode.
[0036] According to an embodiment of the present invention, in the case where the measured
temperatures and voltages of the secondary battery 110 satisfy the first swelling
condition, the measurement unit 123 may measure the temperatures and voltages of the
secondary battery 110 by increasing the measurement frequency. Generally, the swelling
phenomenon tends to rapidly occur in the secondary battery 110 according to the temperature
and charging state of the secondary battery 110. Thus, in a case where the measured
temperatures and voltages of the secondary battery 110 satisfy the first swelling
condition, the measurement unit 123 measures temperatures and voltages of the secondary
battery 110 more frequently, so that it is possible to rapidly prevent the swelling
phenomenon from occurring in the secondary battery 110. For example, if each measurement
is made during a measurement time, the interval between measurement times is decreased
so that more measurements are made in any given time period.
[0037] According to an embodiment of the present invention, the measurement unit 123 may
compute a temperature average and a voltage average using temperatures and voltages
measured during predetermined times and store the temperature and voltage averages
in the memory unit 121.
[0038] For example, the measurement unit 123 may compute a temperature average of temperatures
measured for 1 minute and a voltage average of voltages measured for 2 seconds, and
store the temperature and voltage averages in the memory unit 121. In a case where
the measurement period is 250 msec, the temperature average means an average of temperatures
measured 240 times, and the voltage average means an average of voltages measured
eight times. That is, the voltage and temperature averages computed in the measurement
unit 123 may be renewed every two seconds and every one minute, respectively. Then,
the renewed voltage and temperature averages may be stored in the memory unit 121.
To perform temperature estimation, a predetermined number of past temperature averages
may be stored together with the renewed temperature average in the memory unit 121.
Since temperature changes relatively slowly while voltage changes more rapidly, the
temperature average may be measured over a longer period for reliability, while the
voltage average is measured over a relatively short period to capture rapid changes
in voltage.
[0039] The temperature and voltage averages are used in the temperature estimation and control
of the charging/discharging of the secondary battery 110. Exceptionally measured temperatures
and voltages, i.e. outlying data, are removed. Accordingly, more exact temperature
estimation can be performed.
[0040] Hereinafter, for convenience of illustration, it will be described that the temperature
and voltage measured in the measurement unit 123 are a temperature average of temperatures,
renewed every predetermined period, and a voltage average of voltages, renewed every
predetermined period, respectively. However, the present invention is not limited
thereto.
[0041] In the case where the temperatures and voltages measured in the measurement unit
123 satisfy the first swelling condition, the temperature estimation unit 125 estimates
a temperature after a predetermined time, in other words at a future time, using temperatures
measured in the measurement unit 123.
[0042] More specifically, the temperature estimation unit 125 may estimate the temperature
after the predetermined time by using the temperature increasing rate computed using
a temperature average before the predetermined time and a recently renewed temperature
average. The temperature increasing rate and the estimated temperature after the predetermined
time may be represented by the following Formula 1.

[0043] For example, in the case where the temperature average measured over a 10 minute
interval rises from 42 degrees to 47 degrees, then the temperature increasing rate,
or rate of change of temperature, is 0.5 degrees per minute. If the current temperature
is 48 degrees, then the estimated temperature after a further 10 minutes can be calculated
as 48 + (0.5 x 10) =53 degrees.
[0044] According to an embodiment of the present invention, the temperature estimation unit
125 may estimate a temperature after a predetermined time using a weight according
to the temperature increasing rate. That is, since the swelling phenomenon rapidly
occurs in the secondary battery 110, the probability that the swelling phenomenon
will occur in the secondary battery 110 increases as the temperature increasing rate
increases. Therefore, to reflect this fact, the estimated temperature may be increased
by increasing the weight as the temperature increasing rate increases. In this case,
the estimated temperature may be represented by the following Formula 2.

[0045] For example, in a case where the weight is 1.1 when the temperature increasing rate
is 1 degree per unit time, the weight is 1.5 when the temperature increasing rate
is 4 degrees per unit time, and the current temperature is 40 degrees, the estimated
temperatures per unit time become (1.1×1)+40=41 degrees and (4×1.5)+40=46 degrees,
respectively. That is, as the temperature increasing rate increases, the temperature
estimated in the temperature estimation unit 125 increases, and accordingly, the probability
that the estimated temperature and the voltage average will satisfy the second swelling
condition increases.
[0046] In the case where the estimated temperature and the voltage average satisfy the second
swelling condition, the charging/discharging control unit 127 prevents the swelling
phenomenon from occurring in the secondary battery 110 by controlling the charging/discharging
of the secondary battery 110.
[0047] FIG. 3 is a graph illustrating a swelling condition and an operation of the charging/discharging
control unit according to the swelling condition.
[0048] Referring to FIG. 3, regions A, B and C refer to a normal region where the battery
is operating within normal parameters and swelling is not expected, a swelling preliminary
region where swelling becomes a risk and a swelling region in which swelling will
almost inevitably occur, respectively. That is, the region that satisfies the first
swelling condition is shown as the region B, and the region that satisfies the second
swelling condition is shown as the region C.
[0049] Therefore, in the case where the temperatures and voltages measured in the measurement
unit 123 exist in the region B, the protection apparatus 120 decides that there is
a risk that the swelling phenomenon may occur in the secondary battery 110, and estimates
a temperature after a predetermined time through the temperature estimation unit 125.
In the case where the estimated temperature and the voltage average renewed every
predetermined time is out of the region B and exists in the region C, the charging/discharging
control unit 127 controls the charging/discharging of the secondary battery 110 so
as to prevent the swelling phenomenon from occurring in the secondary battery 110,
in other words to prevent the conditions within the battery actually falling within
region C.
[0050] According to an embodiment of the present invention, in the case where the secondary
battery 110 is in a non-charging mode, the charging/discharging control unit 127 may
control the temperature and voltage of the secondary battery 110 to maintain the first
swelling condition or move the battery out of the first swelling condition into the
normal operating condition by forcibly discharging the secondary battery 110 and thus
decreasing the voltage of the secondary battery 110. In the case where the temperature
and voltage of the secondary battery 110 exist in the region A according to the discharging
of the secondary battery 110, the charging/discharging control unit 127 may stop the
discharging of the secondary battery 110.
[0051] According to an embodiment of the present invention, in the case where the secondary
battery 110 is in a charging mode, the charging/discharging control unit 127 may control
the temperature and voltage of the secondary battery 110 to maintain the first swelling
condition or move the battery out of the first swelling condition into the normal
operating condition by adjusting the current or voltage applied to the secondary battery
110. In the case where the temperature and voltage of the secondary battery 110 satisfy
the second swelling condition even though the current or voltage applied to the secondary
battery 110 is adjusted, the charging/discharging control unit 127 may stop the charging
of the secondary battery 110 by cutting off the current or voltage applied to the
secondary battery 110.
[0052] In the case where the temperature increasing rate exceeds zero, after the charging
of the secondary battery 110 is stopped, the charging/discharging control unit 127
may forcibly discharge the secondary battery 110. Subsequently, in the case where
the temperature and voltage of the secondary battery 110 satisfy the first swelling
condition or the temperature increasing rate is less than zero, after the discharging
of the secondary battery 110, the charging/discharging control unit 127 may stop the
discharging of the secondary battery 110.
[0053] According to an embodiment of the present invention, in the case where the temperatures
and voltages measured in the measurement unit 123 have already satisfied the second
swelling condition, the charging/discharging control unit 127 may immediately stop
the charging of the secondary battery 110 and control the secondary battery 110 to
be forcibly discharged.
[0054] The control unit 129 may generally control the memory unit 121, the measurement unit
123, the temperature estimation unit 125 and the charging/discharging control unit
127.
[0055] FIG. 4 is a flowchart illustrating a control method of the protection apparatus according
to an embodiment of the present invention.
[0056] First, the measurement unit 123 measures voltages and temperatures of the secondary
battery 110 according to predetermined periods (S100).
[0057] The measurement unit 123 decides whether or not the measured voltages and temperatures
satisfy a first swelling condition (S200). In the case where the measured voltages
and temperatures satisfy the first swelling condition, the temperature estimation
unit 125 estimates a temperature after a predetermined time (at a future time) using
the temperatures measured in the measurement unit 123 (S300).
[0058] In a case where the measured voltages and temperatures satisfy the first swelling
condition, the measurement unit 123 may measure temperatures and voltages of the secondary
battery 110 by increasing the measurement frequency. To perform exact temperature
estimation, the measurement unit 123 may compute temperature and voltage averages
that are averages of temperatures and voltage measured for times set differently from
each other.
[0059] The charging/discharging control unit 127 decides whether or not the estimated temperature
and the voltage average satisfy a second swelling condition (S400). In the case where
the estimated temperature and the voltage average satisfy the second swelling condition,
the charging/discharging control unit 127 controls charging/discharging of the secondary
battery 110 (S500).
[0060] FIG. 5 is a flowchart illustrating an operation of the charging/discharging control
unit according to an embodiment of the present invention.
[0061] Referring to FIG. 5, the charging/discharging control unit 127 decides whether the
secondary battery 110 is in a charging mode or in a non-charging mode (S510).
[0062] In the case where the secondary battery 110 is in the non-charging mode, the charging/discharging
control unit 127 forcibly discharges the secondary battery 110, so that it is possible
to prevent, in advance, the swelling phenomenon from occurring in the secondary battery
110 (S520).
[0063] Subsequently, in the case where the temperatures and voltages of the secondary battery
110 satisfy the first swelling condition, or the temperature increasing rate is less
than zero (S530), the charging/discharging control unit 127 may stop the forcible
discharging of the secondary battery 110 (S540). If not, the forcible discharge continues
(step S520).
[0064] In the case where the secondary battery 110 is in the charging mode (S510), the charging/discharging
control unit 127 control the temperatures and voltages of the secondary battery 110
to maintain the first swelling condition by adjusting current and voltage applied
to the secondary battery 110 (S550).
[0065] The charging/discharging control unit 127 decides whether or not the temperatures
and voltages of the secondary battery 110 satisfy the second swelling condition (S560).
In the case where the temperatures and voltages of the secondary battery 110 satisfy
the second swelling condition even though the current or voltage applied to the secondary
battery 110 is adjusted, the charging/discharging control unit 127 stops the charging
of the secondary battery 110 (S570). Otherwise, the charging/discharging control unit
127 returns to the monitoring state, carrying out voltage and temperature measurements
(S100).
[0066] In the case where the temperature increasing rate of the secondary battery 110 exceeds
zero even though the charging of the secondary battery 110 is stopped (S580), the
charging/discharging control unit 127 forcibly discharges the secondary battery 110
(S593), so that it is possible to prevent the swelling phenomenon from occurring in
the secondary battery 110. Forcible discharge continues until the temperature and
voltage satisfy the first swelling condition or the rate of temperature increase falls
below zero, ie. temperature starts to decrease (S595). At that point, forcible discharge
is stopped and the battery can return to the charging condition (S590).
[0067] As described above, the protection apparatus 120 according to the present invention
estimates in advance a risk that the swelling phenomenon may occur in the secondary
battery 110, and controls the charging/discharging of the secondary battery 110 when
the risk exists, so that it is possible to prevent, in advance, the swelling phenomenon
from occurring in the secondary battery 110. A preliminary swelling condition (first
swelling condition) may be implemented in which measurement frequency is increased
as compared to when the battery is operating normally and no swelling is expected,
so as to more closely monitor the state of the battery as the risk of swelling increases.
[0068] While the present invention has been described in connection with certain exemplary
embodiments, it is to be understood that the invention is not limited to the disclosed
embodiments, but, on the contrary, is intended to cover various modifications and
equivalent arrangements included within the scope of the appended claims.
1. Protection apparatus for a secondary battery, comprising:
means for storing temperature and voltage information defining a swelling condition
of a secondary battery;
means for measuring temperature and voltage of the secondary battery;
means for estimating the battery temperature at a predetermined time based on the
measured temperature; and
means for controlling charging/discharging of the secondary battery when the estimated
temperature and the measured voltage satisfy the swelling condition.
2. Apparatus according to claim 1, wherein the stored temperature and voltage define
first and second swelling conditions, wherein the estimating means is arranged to
start estimating the battery temperature when the first swelling condition is satisfied
and the means for controlling charging/discharging is arranged to operate when the
estimated temperature and the measured voltage satisfy the second swelling condition.
3. Apparatus according to claim 2, wherein the measuring means is arranged to measure
temperature and voltage of the secondary battery in a normal state at a first frequency
and to measure temperature and voltage of the secondary battery at a second frequency
higher than the first frequency when the measured temperature and voltage satisfy
the first swelling condition.
4. Apparatus according to claim 2 or 3, wherein when the measured voltage and estimated
temperature satisfy the second swelling condition and the secondary battery is in
a non-charging mode, the charging/discharging control means is arranged to discharge
the secondary battery.
5. Apparatus according to claim 4, wherein during the discharge of the secondary battery
the apparatus is arranged to determine if the measured voltage and estimated temperature
satisfy the first swelling condition or if the temperature is decreasing, and in either
case to stop discharge.
6. Apparatus according to claim 2 or 3, wherein when the measured voltage and estimated
temperature satisfy the second swelling condition and the secondary battery is in
a charging mode, the charging/discharging control means is arranged to adjust the
current and/or voltage applied to the secondary battery.
7. Apparatus according to claim 6, wherein the charging/discharging control means is
arranged to stop charging the secondary battery if the estimated temperature and measured
voltage continue to satisfy the second swelling condition after adjusting the current
and/or voltage applied to the secondary battery.
8. Apparatus according to claim 7, wherein the charging/discharging control means is
arranged to discharge the secondary battery if after stopping charging the secondary
battery the temperature increases.
9. Apparatus according to any one of the preceding claims, wherein the means for estimating
the battery temperature is arranged to estimate the battery temperature by using a
rate of temperature change based on previously measured temperatures.
10. Apparatus according to claim 9, wherein the means for estimating the battery temperature
is arranged to weight rates of temperature change so that higher rates of temperature
increase have a greater weight.
11. Apparatus according to any one of the preceding claims, wherein the temperatures and
voltages comprise temperature and voltage averages measured over predetermined periods.
12. Apparatus according to any one of the preceding claims, wherein the swelling condition
comprises a plurality of sets of temperature and allowable voltage values, the allowable
voltage values decreasing with increasing temperature.
13. Apparatus according to any one of the preceding claims, wherein the measuring means
is arranged to measure temperature and voltage of the secondary battery less frequently
when the secondary battery is in a non-charging mode than when the secondary battery
is in a charging mode.
14. A secondary battery comprising a battery cell and apparatus according to any one of
the preceding claims connected to the battery cell.